[190 Pages] Space battery market services and technologies. Main drivers, constraints and opportunities as well as a detailed analysis by 2027
PORTLAND, ORAGON, UNITED STATES, September 17, 2021 /EINPresswire.com/ – Space Battery Market Outlook – 2027
Space batteries are used on spacecraft as a means of energy storage. In space, batteries withstand hot and cold conditions. Most of the batteries used in space can be recharged by solar cells that convert the sun’s energy into electricity.
Primary batteries contain all of their usable energy when assembled and can only be discharged. Secondary batteries can be recharged from another energy source, such as solar panels. They can also provide power during times when the spacecraft is out of direct sunlight.
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In addition, batteries generate electric current from a chemical reaction. The batteries of vehicles in orbit around the Earth must withstand the high level of ionizing radiation above the shield of the Earth’s atmosphere.
Major players analyzed in the report include EnerSys, Arotech Corporation, EaglePicher Technologies, Bren-Tronics Inc., Saft Groupe, A123 Systems Inc., Automotive Energy Supply Corporation (AESC), Aviation Industry Corporation of China (AVIC), BYD Company Ltd . ., CBAK Energy Technology Inc., Hitachi Chemical Co
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COVID-19 scenario analysis
The global space battery market is strongly impacted by the outbreak of the COVID-19 pandemic.
The COVID-19 pandemic has resulted in declining economic growth in almost all major countries, affecting consumption patterns.
Due to the lockdown implemented in various countries, domestic and international transport has been hampered, which has significantly affected the supply chain of many industries around the world, thus increasing the gap between supply and demand. .
Thus, insufficient supply of raw materials is expected to hamper the production rate of space batteries, which will negatively impact the growth of the market.
However, this situation is expected to improve as the government has started to relax standards around the world for resuming business activities.
Main impact factors: analysis of market scenarios, trends, drivers and impact analysis
Space exploration programs are increasingly becoming the backbone of most services used by humans such as telecommunications, education, healthcare and many more. The space launch program requires energy to successfully achieve the objective, which is not possible without the use of space batteries. This is the most important factor for the space battery market.
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Additionally, batteries in space are used in a variety of applications ranging from earth-orbiting spacecraft, launchers, space shuttles, crew return vehicles, astronaut equipment, landers, rovers and planetary spacecraft. Batteries are mainly used for storing electrical energy or as a source of energy.
Additionally, batteries are used to store excess energy in the event of a power system failure as they are a reliable source of backup. The batteries required for space applications are resistant to shock, vibration and acceleration and are capable of operating in high vacuum.
In addition, the batteries also provide maximum electrical energy in minimum volume and weight. A long active life of up to 10 years and 30,000 life cycles are the driving force behind the space battery market. Some planetary missions require radiation and resistance temperature as low as 80 Â° C.
However, different battery systems are used and tailored to meet the requirements of a particular space mission, as no single battery system can meet these requirements. This is the holding factor for the space battery market.
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The trends in the space battery market are as follows:
Uses of the nickel-cadmium battery
Most of the batteries currently used in spaceflight are nickel-cadmium. They are also called NI-Cad. These batteries are charged by solar cells which convert the sun’s energy into electricity. But Ni-Cad batteries wear out eventually and are not rechargeable.
Space Technology’s small satellite 5 will use lithium-ion, or Li-ion, batteries which use chemicals to store energy. And each cell of a Li-ion battery is equipped with a control circuit to limit voltage peaks during charging and prevent the voltage from dropping too low when discharging. This control circuit also limits the maximum charge and discharge current.
Saft launches its new Tel.X-Plus battery, designed to support space networks which are a key enabler for continuously increasing the speed of data communications. These high-speed networks are critical to the success of applications such as self-driving cars, IoT, artificial intelligence (AI), robots, drones, and telemedicine.
The Tel.X-Plus design is based on the same DNA as Saft is a highly reliable and durable Tel.X nickel battery. It was developed to meet the growing trend of telecommunications systems that require batteries that can discharge faster, while providing a small footprint and longer life.
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